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Файл:Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_688_Библиотеки_им_академика_М_И_Перельмана
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4 Decision-Making Process
Tips
1. The best placement of scars might require “enlarging” the defect to place the
eventual suture lines in the most appropriate position.
2. A more distant ap might have to be harvested to avoid distortion of the struc-
tures and landmarks adjacent to the defect.
3. For defects encompassing more than one unit, consideration should be given to
reconstructing each unit individually, to place the scars in the most advantageous
position.
4. The patient’s expectations, surgeon’s capabilities and resources available should
be taken into consideration.
5. There are often “compromises/price to be paid” to be made to achieve the desired
results, and these will have to be discussed with the patient in detail prior to
undertaking the procedure.
6. In case of multi-stage procedures, the patient co-operation and the “temporary
inconveniences” will have to be discussed in detail.

Part II
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Reconstruction of Specific Defects

Scalp Reconstruction
otica
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Subunits andAnatomical Considerations
Skin of scalp is among the thickest in the body and relatively inelastic. It is hair
bearing and covers a convex area, which can all add up to difculties in reconstruction. The acronym “SCALP” represents S—skin, C—subcutaneous tissue, A—
galea aponeurotica, L—loose areolar tissue, P—pericranium (Fig.5.1). The blood
vessels and nerves run within the galeal layer, which connects the frontalis and
occipitalis muscles. In the temple region (below the temporal line), the terminology
of the scalp layers becomes potentially confusing (Fig.5.2). This can be more easily
appreciated, if one was to consider the temporalis fascia (deep temporal fascia) to
be an extension of the pericranium and the overlying galea, as the temporoparietal
fascia (supercial temporal fascia, suprazygomatic (SMAS)). Not surprisingly, the
5
Fig. 5.1 Layers of the scalp
© Springer Nature Switzerland AG 2024
V. Ilankovan et al., Local Flaps in Facial Reconstruction,
https://doi.org/10.1007/978-3-031-49464-2_5
Skin
Subcutaneous
Galea Aponeur
Loose areola tissue
Pericranium
Bone
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Supratr
a
Periosteum
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Skin
Subcutaneous tissue layer
Galea aponeurotica
Loose connective tissue layer
Periosteum
Frontalis
ochlear
nerve
Supra frontal
nerve
Supraorbital
artery
muscls
5 Scalp Reconstruction
Anterior branch
of superficial
temporal artery
Frontal
branch of VII
Fig. 5.2 Scalp layers in the central and temporal region
vessels and nerves lie within the temporoparietal fascia. A few centimetres above
the zygomatic arch, the temporalis fascia divides into two layers (supercial and
deep layers of the deep temporal fascia) enclosing the supercial temporal fat pad.
The temporoparietal fascia fuses with the supercial layer of the deep temporal
fascia and the periosteum of the zygomatic arch. The frontal branch of the facial
nerve present in the temporoparietal fascia, crossing the zygomatic arch is liable to
damage, if its location is not appreciated.
The scalp covering the vertex (central) is tight and poorly distensible. This is thought
to be due to the thick galea and no underlying muscle. Whereas the scalp overlying the
temporal and parietal regions (lateral) is relatively mobile and is thought to be due to
the thin galea and the presence of an underlying temporalis muscle (Figs.5.3 and 5.4).
Skin
Subcutaneous tissue layer
Temporoparietal fascia
Superficial layer of deep temporal fasci
Superficial temporal fat pad
Deep layer of deep temporal fascia
Temporalis muscle

Subunits andAnatomical Considerations
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Fig. 5.3 Tight and loose areas of scalp - anterior view
Fig. 5.4 Tight and loose areas of the scalp - lateral view

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Fig. 5.5 Sensory nerve
supply of scalp
5 Scalp Reconstruction
The scalp has a rich vascular supply, which is provided by the supercial tempo-
ral, posterior auricular, occipital arteries (branches of the external carotid) and the
supra-orbital and supra-trochlear arteries (branches of the internal carotid). The sensory supply is by the supra-trochlear, supra-orbital, zygomaticotemporal, auriculotemporal, lesser occipital (C2), greater occipital (C2) and third occipital (C3) nerves.
The vessels and nerves run within the galea/temporoparietal fascia (Figs.5.5 and 5.6).
The rst three layers of the scalp are rmly adherent to each other. Scalp aps
can be raised easily in the sub-galeal plane, which provides a relatively avascular
and quick layer for dissection. Subcutaneous dissection on the other hand is more
difcult and must be carried out by sharp dissection, as there is no “natural” plane
to work with. Incisions should be made parallel to the hair follicles and injudicious
use of diathermy avoided, to minimise damage to the hair follicles and risk of alopecia. Because of their relative inelasticity, scalp aps will have to be large in relation to the defect, to achieve closure without excessive tension.

Subunits andAnatomical Considerations
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Fig. 5.6 Sensory nerve suppy for posterior scalp

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5 Scalp Reconstruction
Central (Vertex) Defects
Small Defects
Small defects are amenable to primary closure. Wide undermining in the sub-galeal
plane is often required, to achieve closure. If necessary, small areas can be left to
heal by secondary intention.
Medium-Sized Defects
The primary and secondary defects can be often closed primarily, though on
occasions, the secondary defect is covered by a skin graft in a less conspicuous
location.
Rotation Flap
Indications: Circular defect and defects which can be converted to a triangle.
Technique: A curvilinear incision is made from the base of the defect, and the
ap is raised in the sub-galeal plane. The length of the ap is designed to be at least
6 times the width of the defect. The margins of the defect are widely undermined
and if necessary, the galea is scored to gain additional extensibility of the ap. Care
should however be taken, not to compromise the vascular supply, by damaging the
vessels that run within the galea. A back cut can be employed to decrease the tension of closure, but again care must be taken to avoid vascular compromise. The dog
ear often settles with time and can be corrected at a later date if necessary. The
wounds are closed in layers, and a pressure dressing/drain employed as necessary
(Fig.5.7a–h).
Tips: For large circular defects, the orientation of the incision can be modied
include named vessels in the ap to improve vascularity. The distribution of hair and
hair line should also be taken into account, when planning the incision. It is important to appreciate the difference in length (outer greater than inner) and thickness
(raised ap thinner than native lateral margins) of the two ap margins, and this
would have to be accommodated in the suturing technique. The drain is ideally
placed away from the base of the ap.

a
c
Ar
by
scissor
s or
Central (Vertex) Defects
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b
Scoring the
galea
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Drain
Undermining by finger
scissors
ea undermined
finger or
s
Fig. 5.7 Scalp rotation ap. (a) Defect following excision and ap incision, (b) Wide subgaleal
undermining of surrounding tissue and scoring of galea, (c) Final closure and drains, (d) Marking
of excision and ap, (e) Excision defect, (f) Flap raised with scoring of galea, (g) nal closure with
dog ear left in situ, (h) Late result with spontaneous attening of dog ear

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5 Scalp Reconstruction
gf
h
Fig. 5.7 (continued)
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